Catalog excerpts
Mixed Signal Oscilloscopes MSO5000B, DPO5000B Series Datasheet Key analysis features Wave inspector® controls provide easy navigation and automated search of waveform data Suite of advanced triggers, with standard Visual Trigger and Search 53 automated measurements, selectable filtering, waveform math and FFT analysis Waveform histogram, eye diagram, TIE (jitter/timing) measurement and analysis User-definable math using MATLAB, Visual Studio and Excel Optional analysis for memory, advanced jitter, serial data, power and Wideband RF Designing with today’s faster data rates and tighter timing margins requires an oscilloscope with outstanding signal acquisition performance and analysis capabilities. Tektronix MSO/DPO5000B Series oscilloscopes provide exceptional signal fidelity, with 2 GHz bandwidth and 10 GS/s sample rate, along with advanced analysis and math capabilities, on your bench and in your lab. Run Windows®-based analysis software right on the oscilloscope. Point and click Visual Triggers enable you to capture complex signals with ease. MSO models include 16 digital timing channels, and all models can be equipped to decode common serial protocols, providing a comprehensive view of your systems. Key protocol features Trigger and decode options for mid-speed (100 Mb/s to 1 Gb/s) buses Trigger and decode options for low-speed (<10 Mb/s) buses Compliance test options for USB2.0, Ethernet, USB power, MOST, BroadR-Reach Mask testing on communication, computing and video standards Mixed signal design and analysis (MSO Series) Key performance specifications 2 GHz, 1 GHz, 500 MHz, and 350 MHz bandwidth models Up to 10 GS/s real-time sample rate on one or two channels and up to 5 GS/s on all four channels Up to 250 megapoint record length with MultiView zoom™ 16 digital channels (user upgradeable) MagniVu™ high-speed acquisition provides 60.6 ps timing resolution on all digital channels Automated triggering, decode, and search on parallel buses Per-channel threshold settings >250,000 wfms/s maximum waveform capture rate with FastAcq® acquisition FastFrame™ segmented memory acquisition mode with up to 290,000 segments and >310,000 waveforms per second capture rate Standard 10 MΩ passive voltage probes with less than 4 pF capacitive loading and 500 MHz or 1 GHz analog bandwidth >11 bits vertical resolution using HiRes sampling User-selectable bandwidth limit and DSP filters for lower noise and better measurement accuracy
Open the catalog to page 1Datasheet See the performance difference With up to 2 GHz analog bandwidth and sampling rates up to 10 GS/s, the MSO/DPO5000B series ensures you have the performance you need to capture waveforms with the best possible signal fidelity and resolution for seeing small waveform details. Probing - Up to 1 GHz bandwidth and less than 4 pF capacitive loading provides active probe performance and superior performance over passive probes included with other mid-range oscilloscopes. Performance - With up to 2 GHz bandwidth and 10 GS/s sample rate capture USB2.0 480 Mb/s differential signals with...
Open the catalog to page 2Mixed Signal Oscilloscopes - MSO5000B, DPO5000B Series High vertical resolution If the measurement requirement is to capture high-amplitude signals while seeing smaller signal details the MSO/DPO5000B provides the acquisition flexibility needed to capture the signals of interest while removing the effects of unwanted noise. With HiRes acquisition vertical resolution can be increased to over 11 bits while reducing signal noise. Signal fidelity can be further increased by using channel input filters or applying a wide choice of DSP filters. Capture - 100 Meg point acquisition with HiRes...
Open the catalog to page 3Datasheet Mixed signal design and analysis (MSO Series) The MSO5000B Series mixed-signal oscilloscopes provide 16 digital channels. These channels are tightly integrated into the oscilloscope's user interface, simplifying operation and making it possible to solve mixed-signal issues easily. MSO functionality can also be added later as a user upgrade. Color-coded digital waveform display The MSO5000B Series has redefined the way you view digital waveforms. One common problem with other mixed-signal oscilloscopes is determining if data is a one or a zero when zoomed in far enough that the...
Open the catalog to page 4Mixed Signal Oscilloscopes - MSO5000B, DPO5000B Series The MagniVu high-resolution record provides 60.6 ps timing resolution, enabling you to make critical timing measurements on your digital waveforms. Visual Trigger- Capture signals on two channels with Visual triggering with multiple defined areas and markers showing repeat occurrences. Versatile trigger and search Discovering a device fault is only the first step. Next, you must capture the event of interest to identify root cause The MSO/DPO5000B Series provides a complete set of triggers - including runt, glitch, width, timeout,...
Open the catalog to page 5The standard limit test package enables long-term signal monitoring, characterizing signals during design, and production line testing. Limit test compares a tested signal to a known good or "golden" version of the same signal with user-defined vertical and horizontal tolerances. You can tailor a limit test to your specific requirements by defining test duration in a number of waveforms, setting a violation threshold that must be met before considering a test a failure, counting hits with statistical information, and setting actions upon violations, test failure, and test complete. Custom...
Open the catalog to page 6Mixed Signal Oscilloscopes - MSO5000B, DPO5000B Series DDR memory bus analysis (optional) The optional DDR memory analysis software package (Option DDRA) automatically identifies DDR1, DDR2, LP-DDR, and LP-DDR2 Reads and Writes and makes JEDEC conformance measurements with Pass/Fail results on all edges in every Read and Write burst, perfect for debugging and troubleshooting DDR memory buses. Also provided are common measurements of clock, address, and control signals. Used with DPOJET (Option DJA), Option DDRA is the fastest way to debug complex memory signaling issues. Vector signal...
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